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Theoretical and numerical investigation on the fin effectiveness and the fin efficiency of printed circuit heat exchanger with straight channels

机译:用直线通道的翅片效力与翅片效率的理论与数值研究

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摘要

Theoretical and numerical studies were conducted on the fin effectiveness and the fin efficiency of printed circuit heat exchanger (PCHE). A heat conduction equation for the fins of PCHE with straight channels was derived, from which the longitudinal temperature distribution of the fins can be obtained. And the expressions of the fin effectiveness and the fin efficiency were developed. Based on their expressions, an understanding of the heat transfer process between the fin surface and the bulk fluid was improved. Results show that the PCHE fin effectiveness is enhanced by the choices of high fin thermal conductivity, decreasing the ratio of the fin thickness to the radius of the channels, or under conditions for which the convective coefficient is small. As for the fin efficiency of PCHE, it's improved with high fin thermal conductivity, thick fin and low convective coefficient of the working fluid. For the cases with large Biot number, the PCHE fin effectiveness and the PCHE fin efficiency can be weakened up to 20%, which should be considered in the modeling of thermal-hydraulic. Moreover, the theoretical investigations were validated against the numerical simulation, and they agree with each other very well.
机译:对印刷电路热交换器(PCHE)的鳍效力和翅片效率进行了理论和数值研究。衍生具有直通道的PCHE翅片的热传导方程,可以获得翅片的纵向温度分布。开发了鳍效力和鳍效率的表达。基于它们的表达,改善了对翅片表面和散装液之间的传热过程的理解。结果表明,通过高翅片导热率的选择,PCHE鳍效果增强,降低了翅片厚度与通道半径的比率,或者在对流系数小的条件下。至于PCHE的翅片效率,它具有高翅片导热性,厚的翅片和工作流体的低对流系数。对于具有大的Biot数量,PCHE鳍效果和PCHE鳍效率可减弱至20%,应在热液压建模中考虑。此外,理论研究验证了数值模拟,它们非常普遍地同意。

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